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首页> 外文期刊>FEMS Microbiology Ecology >Whole-genome amplification (WGA) of marine photosynthetic eukaryote populations
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Whole-genome amplification (WGA) of marine photosynthetic eukaryote populations

机译:海洋光合真核生物种群的全基因组扩增(WGA)

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摘要

Metagenomics approaches have been developing rapidly in marine sciences. However, the application of these approaches to marine eukaryotes, and in particular to the smallest ones, is challenging because marine microbial communities are dominated by prokaryotes. One way to circumvent this problem is to separate eukaryotic cells using techniques such as single-cell pipetting or flow cytometry sorting. However, the number of cells that can be recovered by such techniques remains low and genetic material needs to be amplified before metagenomic sequencing can be undertaken. In this methodological study, we tested the application of whole-genome amplification (WGA) to photosynthetic eukaryotes. We performed various optimization steps both on a mixture of known microalgal strains and on natural photosynthetic eukaryote populations sorted by flow cytometry. rRNA genes were used as markers for assessing the efficiency of different protocols. Our data indicate that WGA is suitable for the amplification of photosynthetic eukaryote genomes, but that biases are induced, reducing the diversity of the initial population. Nonetheless, this approach appears to be suitable for obtaining metagenomics data on microbial eukaryotic communities.
机译:在海洋科学中,元基因组学方法发展迅速。然而,将这些方法应用于海洋真核生物,特别是最小的方法,是具有挑战性的,因为海洋微生物群落以原核生物为主。解决此问题的一种方法是使用单细胞移液或流式细胞仪分选技术分离真核细胞。然而,可以通过这种技术回收的细胞数量仍然很少,并且在进行宏基因组测序之前需要扩增遗传物质。在这项方法学研究中,我们测试了全基因组扩增(WGA)在光合作用真核生物中的应用。我们对已知微藻菌株的混合物以及通过流式细胞仪分选的天然光合真核生物种群均进行了各种优化步骤​​。 rRNA基因用作评估不同方案效率的标记。我们的数据表明WGA适合于光合作用的真核生物基因组的扩增,但是会产生偏差,从而减少了初始种群的多样性。但是,这种方法似乎适合于获得微生物真核生物群落的宏基因组学数据。

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